Location History:
- Nagano-prefecture, JP (2004)
- Minami-Saku Gun, JP (2010 - 2011)
Company Filing History:
Years Active: 2004-2011
Title: The Innovative Contributions of Yoshinori Ide
Yoshinori Ide is a notable inventor from Minami-Saku Gun, Japan, with a remarkable portfolio of four patents. His innovative work primarily focuses on dielectric materials, which are essential in various electronic components.
Latest Patents
Yoshinori Ide's latest patents reflect his expertise in ceramic materials. One significant patent is for a ceramic multilayer substrate, which is produced by co-sintering layers of different dielectric constants. The patent details a low dielectric constant layer made from a specific ceramic composition and the integration of a high dielectric constant layer composed of barium titanate with added copper oxide and bismuth oxide. Another important patent is for a dielectric porcelain composition, which consists of a barium titanate-based dielectric material combined with bismuth oxide and selected compounds like copper oxide, zinc oxide, and magnesium oxide. This innovation enhances the properties of electronic components widely used in advanced technology.
Career Highlights
Throughout his career, Yoshinori Ide has made significant contributions to the field of materials science. He has been associated with reputable companies, including NGK Insulators, Inc. and Soshin Electric Co., Ltd. His work in these organizations has facilitated advancements in dielectric materials, laying the groundwork for improved electronic devices.
Collaborations
Yoshinori has collaborated with esteemed colleagues, such as Tadashi Otagiri and Tomoyuki Hasegawa. These partnerships have allowed for the exchange of ideas and collaborative efforts that enhance their respective research and development projects.
Conclusion
Yoshinori Ide's contributions to the invention of advanced ceramic materials and dielectric compositions have had a significant impact on technology. With his innovative patents and collaborations, he continues to influence the field and pave the way for future advancements in electronic components.